1. Academic Validation
  2. Phenylbutyrate and β-cell function: contribution of histone deacetylases and ER stress inhibition

Phenylbutyrate and β-cell function: contribution of histone deacetylases and ER stress inhibition

  • Epigenomics. 2017 May;9(5):711-720. doi: 10.2217/epi-2016-0160.
Sabbir Khan 1 Sandeep K Komarya 1 Gopabandhu Jena 1
Affiliations

Affiliation

  • 1 Facility for Risk Assessment & Intervention Studies, Department of Pharmacology & Toxicology, National Institute of Pharmaceutical Education & Research, Sector-67, SAS Nagar, Punjab-160062, India.
Abstract

Incidences of diabetes are increasing globally due to involvement of genetic and epigenetic factors. Phenylbutyrate (PBA) is a US FDA approved drug for treatment of urea cycle disorder in children. PBA reduces endoplasmic reticulum (ER) stress and is proven as a potent histone deacetylases (HDACs) inhibitor. Chronic ER stress results in unfolding protein response, which triggers Apoptosis. Abnormal ER homoeostasis is responsible for defective processing of several genes/proteins and contributes to β-cell death/failure. Accumulated evidences indicated that HDACs modulate key biochemical pathways and HDAC inhibitors improve β-cell function and Insulin resistance by modulating multiple targets. This review highlights the role of PBA on β-cell functions, Insulin resistance for possible treatment of diabetes through inhibition of ER stress and HDACs.

Keywords

ER stress; HDAC inhibition; diabetes; phenylbutyrate; β-cell.

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